Seamoretech offers a modular zero‑liquid‑discharge system that attaches to existing desalination plants to extract and purify water from brine streams, effectively increasing freshwater output. The technology uses ion‑exchange and precipitation to recover high‑value salts such as calcium, magnesium, lithium and sodium, while IoT sensors and machine‑learning controls optimize performance and enable remote monitoring.
Funding
Funding not disclosed

Founders
Product
Problem
Desalination plants generate large volumes of concentrated brine, which are typically discharged back into the ocean, causing marine ecosystem damage and representing a lost resource of water and valuable minerals.
Solution
Seamoretech delivers a zero‑liquid‑discharge (ZLD) brine purification system that can be installed directly at the brine discharge point of existing desalination facilities. The modular unit extracts and purifies water to produce additional freshwater, effectively doubling the plant’s water output. Simultaneously, the technology selectively recovers high‑value salts such as calcium, magnesium, lithium, and sodium for industrial use. The system operates autonomously 24/7, leveraging IoT sensors and machine‑learning algorithms to adapt to varying brine compositions without the need for chemicals or extensive operator intervention. Process data are streamed to a cloud dashboard for remote monitoring, performance analytics, and predictive maintenance.
Target Audience
Primary customers are desalination plant operators and water utilities seeking to increase freshwater yield while eliminating brine discharge, as well as industrial users (e.g., mining, chemical processing) that require sustainable sources of extracted minerals.
Features
- Zero‑liquid‑discharge architecture that captures 100 % of water from brine streams
- Selective mineral recovery (Ca, Mg, Li, Na, etc.) using proprietary ion‑exchange and precipitation processes
- Plug‑and‑play hardware package with quick‑install mounting, requiring no modification to upstream equipment
- Integrated IoT edge devices for real‑time flow, temperature, and composition monitoring
- Adaptive control layer powered by machine‑learning models that optimize recovery rates for variable brine chemistries
- Low‑energy consumption design eliminating the need for high‑temperature evaporation or chemical additives
- Continuous 24/7 operation with automated shutdown handling and remote diagnostics via a secure cloud portal
- Competitive, transparent pricing model with optional performance‑based service contracts